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Naser Sanchooli 《Russian Journal of Ecology》2017,48(3):275-279
In the present study, Laudakia nupta were selected as a case study and were examined using the Maxent method to evaluate the potential distribution and most suitable areas. All occurrence records of the species have been gathered from literature and recent updated checklists of lizards of Iran. The final model of L. nupta showed a good performance (AUC = 0.962; SD = 0.011) indicating that the most suitable areas are situated in the western Zagros Mountains in Iran. The situation of the suitable areas in the western Zagros, while the remaining southeastern areas are of low suitability, is controversial and needs more investigation with different criteria such as molecular and other systematic methods. Precipitation of the wettest quarter is the most effective factor for the species presence and I can assume this importance is directly related to the growth of plant in the habitat as main source of food. 相似文献
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Imprinted polymer particles have been developed as a novel adsorbent for the adsorption of copper from aqueous solution. This
method has received much attention in various fields because of their high selectivity for template molecules. In this work,
separation of copper from water and biological samples by batch solid phase extraction based on molecular imprinting technique
is presented. Copper-imprinted polymer was prepared by free radical solution polymerization in a glass tube containing CuSO4, morin, 4-vinylpyridine as a functional monomer, ethyleneglycoldimethacrylate as a cross-linking monomer, 2,2′- azobisisobutyronitrile
as an initiator. The polymer block obtained was ground and sieved, and the Cu-morin complex was removed from polymer particles.
The synthesized polymer particles both prior to and after leaching have been characterized by IR and X-ray diffraction studies.
The effect of different parameters, such as pH, adsorption and desorption time, type and least amount of the eluent for elution
of the complex from polymer were evaluated. The limit of detection of the proposed method was 0.12 μg L−1. The method was applied to the recovery and determination of copper in water and biological real samples. 相似文献
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